Coupled graphical models and their thresholds

Seyed Hamed Hassani, N. Macris, R. Urbanke
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引用次数: 57

Abstract

The excellent performance of convolutional low-density parity-check codes is the result of the spatial coupling of individual underlying codes across a window of growing size, but much smaller than the length of the individual codes. Remarkably, the belief-propagation threshold of the coupled ensemble is boosted to the maximum-a-posteriori one of the individual system. We investigate the generality of this phenomenon beyond coding theory: we couple general graphical models into a one-dimensional chain of large individual systems. For the later we take the Curie-Weiss, random field Curie-Weiss, If-satisfiability, and Q-coloring models. We always find, based on analytical as well as numerical calculations, that the message passing thresholds of the coupled systems come very close to the static ones of the individual models. The remarkable properties of convolutional low-density parity-check codes are a manifestation of this very general phenomenon.
耦合图形模型及其阈值
卷积低密度奇偶校验码的优异性能是单个底层码在窗口上的空间耦合的结果,而窗口的大小比单个码的长度要小得多。值得注意的是,耦合系统的信念传播阈值被提高到单个系统的最大后验阈值。我们研究了这种现象在编码理论之外的普遍性:我们将一般的图形模型耦合到一个由大型单个系统组成的一维链中。对于后者,我们采用Curie-Weiss、随机场Curie-Weiss、If-satisfiability和Q-coloring模型。基于分析和数值计算,我们总是发现,耦合系统的消息传递阈值与单个模型的静态阈值非常接近。卷积低密度奇偶校验码的显著特性是这种非常普遍的现象的一种表现。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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